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Optical responses of lead halide perovskite semiconductors

机译:铅卤化铅钙钛矿半导体的光学响应

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Halide perovskites are a promising class of semiconductors with outstanding optical properties. They are considered to be superior materials for conversion between light and electrical energy, and efficient conversion in both directions has been demonstrated with solar cell and light-emitting diode devices based on halide perovskites. The high device performances have been attributed to materials properties such as exceptionally low densities of defects formed within the bandgap of these materials and extremely high photoluminescence (PL) quantum efficiencies even at room temperature. In this topical review, we present recent advances in understanding of the photophysics of lead halide perovskites and discuss several practically important aspects of these semiconductors; the controllability of optical properties by halogen substitution, the anti-Stokes PL as a result of strong electron-phonon interactions, and temperature dependences of the PL spectrum, the longitudinal-optical phonon spectrum, and the refractive index.
机译:Halide Perovskites是一种有前途的半导体,具有出色的光学性质。它们被认为是用于在光线和电能之间转换的优异材料,并且已经通过基于卤化卤素的太阳能电池和发光二极管器件对两个方向进行有效转换。高器件性能已经归因于材料性质,例如在这些材料的带隙内形成的具有异常低密度,并且即使在室温下也是非常高的光致发光(PL)量子效率。在本次要审查中,我们对理解铅卤化铅普罗脂的光物理学的最新进展并讨论了这些半导体的几个实际重要方面;光学性质通过卤素取代的可控性,抗斯托克斯PL作为强电子 - 声子相互作用的结果,以及PL光谱的温度依赖性,纵向光声波谱和折射率。

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